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Experimental Demonstration of an Interferometric Technique for Characterizing the Full Optical Behavior of Multi-Mode Power Detectors

机译:用于表征多模功率检测器全光学特性的干涉技术的实验演示

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摘要

An experimental method is presented for characterizing the full optical behavior of few-mode power detectors. The technique involves illuminating the detector with a pair of coherent sources. When the phase of one source is rotated relative to the other, the detector output displays a fringe. Measurement of the complex amplitude of this fringe allows an element of a two-point optical response function to be recovered. By repeating the process for different source positions and orientations, the full two-point response function can be mapped out. From this function it is possible to obtain the full spatial form of each of the modes of the field in which the detector is incoherently sensitive to power, along with the responsivity to the power carried by each of these modes. We describe a scanning system assembled for performing such measurements at frequencies in the range 195–270 GHz. Results will be presented for measurements made on a detector that was stopped down to simulate and a few-mode planar absorber.
机译:提出了一种用于表征少数模式功率检测器的全光学性能的实验方法。该技术涉及用一对相干光源照亮检测器。当一个光源的相位相对于另一个光源旋转时,检测器输出将显示条纹。通过测量该条纹的复振幅,可以恢复两点光学响应函数的元素。通过针对不同的源位置和方向重复该过程,可以绘制出完整的两点响应函数。通过该功能,可以获得检测器对功率非相干敏感的场的每个模式的完整空间形式,以及对这些模式中的每个模式所承载的功率的响应度。我们描述了一个组装的扫描系统,用于在195-270 GHz范围内的频率上执行此类测量。将给出在一个被停止模拟的检测器和一个少数模式平面吸收器上进行测量的结果。

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